EP2153954A1 - Automatic working centre for frame pieces - Google Patents

Automatic working centre for frame pieces Download PDF

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Publication number
EP2153954A1
EP2153954A1 EP08425544A EP08425544A EP2153954A1 EP 2153954 A1 EP2153954 A1 EP 2153954A1 EP 08425544 A EP08425544 A EP 08425544A EP 08425544 A EP08425544 A EP 08425544A EP 2153954 A1 EP2153954 A1 EP 2153954A1
Authority
EP
European Patent Office
Prior art keywords
pieces
pressers
working centre
working
centre
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
EP08425544A
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German (de)
French (fr)
Other versions
EP2153954B1 (en
Inventor
Giancarlo Muti
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Masterwood SpA
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Masterwood SpA
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Masterwood SpA filed Critical Masterwood SpA
Priority to EP08425544.7A priority Critical patent/EP2153954B1/en
Publication of EP2153954A1 publication Critical patent/EP2153954A1/en
Application granted granted Critical
Publication of EP2153954B1 publication Critical patent/EP2153954B1/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B27WORKING OR PRESERVING WOOD OR SIMILAR MATERIAL; NAILING OR STAPLING MACHINES IN GENERAL
    • B27MWORKING OF WOOD NOT PROVIDED FOR IN SUBCLASSES B27B - B27L; MANUFACTURE OF SPECIFIC WOODEN ARTICLES
    • B27M1/00Working of wood not provided for in subclasses B27B - B27L, e.g. by stretching
    • B27M1/08Working of wood not provided for in subclasses B27B - B27L, e.g. by stretching by multi-step processes
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23QDETAILS, COMPONENTS, OR ACCESSORIES FOR MACHINE TOOLS, e.g. ARRANGEMENTS FOR COPYING OR CONTROLLING; MACHINE TOOLS IN GENERAL CHARACTERISED BY THE CONSTRUCTION OF PARTICULAR DETAILS OR COMPONENTS; COMBINATIONS OR ASSOCIATIONS OF METAL-WORKING MACHINES, NOT DIRECTED TO A PARTICULAR RESULT
    • B23Q1/00Members which are comprised in the general build-up of a form of machine, particularly relatively large fixed members
    • B23Q1/03Stationary work or tool supports
    • B23Q1/032Stationary work or tool supports characterised by properties of the support surface
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23QDETAILS, COMPONENTS, OR ACCESSORIES FOR MACHINE TOOLS, e.g. ARRANGEMENTS FOR COPYING OR CONTROLLING; MACHINE TOOLS IN GENERAL CHARACTERISED BY THE CONSTRUCTION OF PARTICULAR DETAILS OR COMPONENTS; COMBINATIONS OR ASSOCIATIONS OF METAL-WORKING MACHINES, NOT DIRECTED TO A PARTICULAR RESULT
    • B23Q3/00Devices holding, supporting, or positioning work or tools, of a kind normally removable from the machine
    • B23Q3/02Devices holding, supporting, or positioning work or tools, of a kind normally removable from the machine for mounting on a work-table, tool-slide, or analogous part
    • B23Q3/06Work-clamping means
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B27WORKING OR PRESERVING WOOD OR SIMILAR MATERIAL; NAILING OR STAPLING MACHINES IN GENERAL
    • B27CPLANING, DRILLING, MILLING, TURNING OR UNIVERSAL MACHINES FOR WOOD OR SIMILAR MATERIAL
    • B27C9/00Multi-purpose machines; Universal machines; Equipment therefor
    • B27C9/02Multi-purpose machines; Universal machines; Equipment therefor with a single working spindle
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B27WORKING OR PRESERVING WOOD OR SIMILAR MATERIAL; NAILING OR STAPLING MACHINES IN GENERAL
    • B27FDOVETAILED WORK; TENONS; SLOTTING MACHINES FOR WOOD OR SIMILAR MATERIAL; NAILING OR STAPLING MACHINES
    • B27F1/00Dovetailed work; Tenons; Making tongues or grooves; Groove- and- tongue jointed work; Finger- joints
    • B27F1/02Making tongues or grooves, of indefinite length
    • B27F1/04Making tongues or grooves, of indefinite length along only one edge of a board

Definitions

  • the present invention concerns an automatic working centre for frame pieces.
  • These working centres include a fixed load-bearing structure: both the work table to support the pieces to be worked and the operating head to which the various tools required for the different machining operations are fitted to this structure.
  • the work table is comprised of a certain number of parallel cross bars, which can be moved along an axis of the table itself.
  • the means to lock the piece for working are fitted on this cross bars and said locking means are also mobile, moving on carriages along the cross bars and therefore, in a perpendicular direction to the aforementioned axis.
  • the locking means may be of various types: suction cups equipped with a pressure fastening system or devices with clamps and stops that can be associated with the cross bars, level with strike plates are the most frequently used.
  • the number of cross bars and locking means will vary both according to the dimensions of the piece and to the dimensions of the machine.
  • clamps are controlled by linear movements, suitably coordinated to guarantee stable piece positioning, even when said pieces are to be worked in mirrored mode, on both faces.
  • the purpose of this invention is therefore to eliminate the problems cited above.
  • This purpose is achieved using a device that automatically controls shaped clamps moved with a roto-translation motion.
  • the main advantage achieved using this invention essentially consists of the fact that the pieces to be worked are locked into position more effectively, which is particularly important in the case of having to work pieces with small-sized locking surfaces. Moreover, the shape of the locking elements allows optimum positioning of these surfaces according to the machining operations to be performed.
  • the invention consists of an automatic working centre for frame pieces, comprised of a work table (3) formed by several mobile cross bars (4), in which each bar (4) is equipped with locking means (5) for the pieces (2) to be worked as well as with mobile strike plates (10) to act as stops for the pieces (2) to be worked.
  • the locking means (5) include at least two pressers (6), which are driven with a roto-translation movement allowing them to pass from a standstill position, in which they do not interact with the pieces (2), to a working position, in which they clamp the pieces (2) during machining, and vice versa.
  • the pressers (6) include sections of surfaces (61), shaped so as to complement one another, allowing them also to interact on the pieces (2) to be worked at the same time.
  • the working centre (1) is comprised of bars (4), each equipped with three pressers (6), so as to allow machining operations on the opposite faces of two pieces (2) of the same type (uprights or crosspieces) in sequence, keeping them constantly clamped in position throughout each operating stage.
  • the working centre (1) can perform machining operations on opposite faces of pairs of work pieces (2) - even of different types - in sequence, keeping them constantly clamped in position throughout each operating stage.
  • this is extremely useful since, at the end of each production cycle, the pieces (2) needed to assemble a full door or window are ready.
  • the working centre (1) also includes a movement device (7) for the pressers (6), as embodied in Figure 7 , which transmits a roto-translation movement.
  • the movement device (7) for the pressers (6) is comprised of actuators means (8) and motion transmission means (9), that can be implemented in various functionally equivalent ways.
  • a first solution shows the motion transmission means (9) inclusive of a group of sliding pistons (91), each one integral with a corresponding presser (6) and used to move the pressers (6) vertically according to the size of the piece (2) to be worked.
  • the motion transmission means (9) also include a group of cylinders (92), one for each piston (91), which slide tangentially to the corresponding piston (91) so as to cause the rotary movement of the presser (6) integral with the piston (91).
  • the pistons (91) have a polygonal section core (93) so as to maintain separate control over the rotary and translation movements of the pressers (6).
  • the actuators means (8) include a pneumatic system (81) to control the motion transmission means (9).
  • pistons (91) and cylinders (92) will move between just two working positions, which will be reached by emitting compressed air into their respective sliding sleeves.
  • the actuators means (8) include a mechanical system (82) to control the cylinders (92) so as to be able to change their position continuously. This way, it is also possible to change continuously the angled position of the associated pressers (6). Therefore, the cylinders (92) and pistons (91) include sections of surfaces (911, 921) correspondingly shaped so as to interact with one another to cause the pressers (6) to rotate arbitrarily.
  • FIG. 2 shows the working centre (1) at a standstill and the pieces (2) not yet in the working position; in Figure 3 , the frame pieces (2) are ready for working on the two inner faces and the two side pressers (6) are in the working position.
  • the corresponding pistons (91) have performed a complete stroke upwards, the cylinders (92) have caused the pressers (6) to rotate as required and the pistons (91) have been retracted to intercept and lock the pieces (2) for working in position.
  • the strike plates (10) act as inner stops for positioning the pieces (2) and they retract prior to the intervention of the machine tools.
  • the shaped sections of surfaces (61) allow two pressers (6) to intervene contemporaneously on the same piece (2) at any stage of working regardless of the dimensions of the locking surfaces, thereby guaranteeing the position of said piece (2).

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  • Engineering & Computer Science (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Mechanical Engineering (AREA)
  • Wood Science & Technology (AREA)
  • Forests & Forestry (AREA)
  • Machine Tool Units (AREA)
  • Jigs For Machine Tools (AREA)

Abstract

An automatic working centre for frame pieces comprises a work table (3) formed by a group of mobile cross bars (4), wherein each bar (4) is equipped with locking means (5) for the pieces (2) to be worked. The locking means (5) include at least two pressers (6) which are driven with a roto-translation movement so as to pass from a standstill position, in which they do not interact with the pieces (2), to a working position, in which they clamp the pieces (2) during machining, and vice versa. The pressers (6) include sections of surfaces (61), shaped so as to complement one another, allowing the pressers (6) also act on the pieces (2) to be worked at the same time.

Description

  • The present invention concerns an automatic working centre for frame pieces.
  • Although the invention can be used for different applications, it lends itself to the manufacture of uprights and crosspieces for doors and windows. In fact, this type of machining very often requires the same type of operation to be mirrored on pairs of work pieces of the same type. Moreover, the operations in question are often carried out on opposite faces of a piece and therefore, it is necessary to provide for blocking of the piece in successive stages to allow machine tools to approach first on one side and then on the other.
  • These working centres include a fixed load-bearing structure: both the work table to support the pieces to be worked and the operating head to which the various tools required for the different machining operations are fitted to this structure.
  • On many woodworking machines, the work table is comprised of a certain number of parallel cross bars, which can be moved along an axis of the table itself. The means to lock the piece for working are fitted on this cross bars and said locking means are also mobile, moving on carriages along the cross bars and therefore, in a perpendicular direction to the aforementioned axis. The locking means may be of various types: suction cups equipped with a pressure fastening system or devices with clamps and stops that can be associated with the cross bars, level with strike plates are the most frequently used. In any case, since the purpose is to support the work piece, the number of cross bars and locking means will vary both according to the dimensions of the piece and to the dimensions of the machine.
  • There are also other known devices for locking pieces in position to be worked and these are suitable for use in automatic and/or manual operating modes.
  • For example, there are automatic locking devices where the clamps are controlled by linear movements, suitably coordinated to guarantee stable piece positioning, even when said pieces are to be worked in mirrored mode, on both faces.
  • However, these devices have a mechanical complexity that involves extremely high costs and above all, they have been found to have piece control limits where the surfaces available for locking said pieces into position have small dimensions. In this case in fact, there may be small movements of work pieces leading to imprecise machining operations.
  • As far as manually controlled devices are concerned, these require all interventions to be performed while the machine is at a standstill; this leads to slowing down the working rate and creating unacceptable production rate reductions.
  • The purpose of this invention is therefore to eliminate the problems cited above.
  • This purpose is achieved using a device that automatically controls shaped clamps moved with a roto-translation motion.
  • The main advantage achieved using this invention essentially consists of the fact that the pieces to be worked are locked into position more effectively, which is particularly important in the case of having to work pieces with small-sized locking surfaces. Moreover, the shape of the locking elements allows optimum positioning of these surfaces according to the machining operations to be performed.
  • In particular, when manufacturing doors and windows, for which it is necessary to carry out machining operations on a pair of uprights and a pair of crosspieces, in one operating cycle it is possible to work the exact number of parts needed for one door or one window.
  • Lastly, the construction complexity of the mechanical parts is reduced to a minimum, with resulting benefits both in terms of overall dimensions, and above all, of cost-effectiveness.
  • Further benefits and characteristics of this invention will become evident in the detailed description to follow, with reference to the attached drawings which illustrate by way of example but without limitation, machine execution, where:
    • Figure 1 illustrates an overall perspective view of the invention;
    • Figure 2 illustrates the invention in an initial operating condition, shown respectively from the front (Fig. 2a) and in perspective (Fig. 2b);
    • Figure 3 illustrates the invention in a second operating condition, shown respectively from the front (Fig. 3a) and in perspective (Fig. 3b);
    • Figure 4 illustrates the invention in a third operating condition, shown respectively from the front (Fig. 4a) and in perspective (Fig. 4b);
    • Figure 5 illustrates the invention in a fourth operating condition, shown respectively from the front (Fig. 5a) and in perspective (Fig. 5b);
    • Figure 6 illustrates the invention in a fifth operating condition, shown respectively from the front (Fig. 6a) and in perspective (Fig. 6b);
    • Figure 7 illustrates a detail of the invention shown in perspective;
    • Figure 8 illustrates the detail embodied in Figure 7, shown in perspective in a first implementation solution;
    • Figure 9 illustrates the detail embodied in Figure 7, shown in perspective in a second implementation solution.
  • As can be seen from the figures, the invention consists of an automatic working centre for frame pieces, comprised of a work table (3) formed by several mobile cross bars (4), in which each bar (4) is equipped with locking means (5) for the pieces (2) to be worked as well as with mobile strike plates (10) to act as stops for the pieces (2) to be worked.
  • On this working centre (1), the locking means (5) include at least two pressers (6), which are driven with a roto-translation movement allowing them to pass from a standstill position, in which they do not interact with the pieces (2), to a working position, in which they clamp the pieces (2) during machining, and vice versa. The pressers (6) include sections of surfaces (61), shaped so as to complement one another, allowing them also to interact on the pieces (2) to be worked at the same time.
  • Making explicit reference to the implementation solutions embodied in the figures, the working centre (1) is comprised of bars (4), each equipped with three pressers (6), so as to allow machining operations on the opposite faces of two pieces (2) of the same type (uprights or crosspieces) in sequence, keeping them constantly clamped in position throughout each operating stage.
  • Overall, therefore, since the bars (4) can be grouped together in different ways, the working centre (1) can perform machining operations on opposite faces of pairs of work pieces (2) - even of different types - in sequence, keeping them constantly clamped in position throughout each operating stage. When manufacturing doors and windows, this is extremely useful since, at the end of each production cycle, the pieces (2) needed to assemble a full door or window are ready.
  • The working centre (1) also includes a movement device (7) for the pressers (6), as embodied in Figure 7, which transmits a roto-translation movement. The movement device (7) for the pressers (6) is comprised of actuators means (8) and motion transmission means (9), that can be implemented in various functionally equivalent ways.
  • A first solution, embodied in Figure 8, shows the motion transmission means (9) inclusive of a group of sliding pistons (91), each one integral with a corresponding presser (6) and used to move the pressers (6) vertically according to the size of the piece (2) to be worked. The motion transmission means (9) also include a group of cylinders (92), one for each piston (91), which slide tangentially to the corresponding piston (91) so as to cause the rotary movement of the presser (6) integral with the piston (91). The pistons (91) have a polygonal section core (93) so as to maintain separate control over the rotary and translation movements of the pressers (6).
  • In the solution embodied in Figure 8, the actuators means (8) include a pneumatic system (81) to control the motion transmission means (9). In this case, therefore, pistons (91) and cylinders (92) will move between just two working positions, which will be reached by emitting compressed air into their respective sliding sleeves. Thus there will be only two possible angled positions for the pressers (6), according to the sliding possibilities for the cylinders (92).
  • In a second solution embodied in Figure 9, as well as a group of pistons (91), the same as those already described and controlled by a same pneumatic system (81), the actuators means (8) include a mechanical system (82) to control the cylinders (92) so as to be able to change their position continuously. This way, it is also possible to change continuously the angled position of the associated pressers (6). Therefore, the cylinders (92) and pistons (91) include sections of surfaces (911, 921) correspondingly shaped so as to interact with one another to cause the pressers (6) to rotate arbitrarily.
  • The figures from 2 to 6 embody an operating sequence regarding the simultaneous machining of two pieces (2) on two opposite faces. For the sake of simplicity, only one cross bar (4) and relevant locking means (5) is shown.
  • The situation embodied in Figure 2 shows the working centre (1) at a standstill and the pieces (2) not yet in the working position; in Figure 3, the frame pieces (2) are ready for working on the two inner faces and the two side pressers (6) are in the working position. To reach this position, in order, the corresponding pistons (91) have performed a complete stroke upwards, the cylinders (92) have caused the pressers (6) to rotate as required and the pistons (91) have been retracted to intercept and lock the pieces (2) for working in position. The strike plates (10) act as inner stops for positioning the pieces (2) and they retract prior to the intervention of the machine tools.
  • In Figure 4, the inner faces of the pieces (2) have been worked; in Figure 5, the central presser (6) has been moved to the working position, following the same process as that described for the side pressers (6), while the side pressers (6) are still engaged; this guarantees that the pieces (2) will maintain their positions unchanged.
  • In Figure 6, the side pressers (6) have returned to the standby position and the outer faces of the pieces (2) have been worked, after which, the mobile strike plates (10) have moved to a more suitable position for correct tool intervention.
  • The shaped sections of surfaces (61) allow two pressers (6) to intervene contemporaneously on the same piece (2) at any stage of working regardless of the dimensions of the locking surfaces, thereby guaranteeing the position of said piece (2).
  • The invention, thus conceived, is open to numerous changes and variations, all of which fall within the invention concept. Moreover, all parts can be replaced by technically equivalent elements.
  • In practice, of course, it will be possible to make changes and/or improvements, falling in any case within the claims as stated herein.

Claims (12)

  1. An automatic working centre for frame pieces, comprised of a work table (3) formed by a group of mobile cross bars (4), wherein each bar (4) is equipped with locking means (5) for the pieces (2) to be worked, said working centre (1) being characterised in that the locking means (5) include at least two pressers (6), which are driven with a roto-translation movement, allowing them to pass from a standstill position, in which they do not interact with the pieces (2), to a working position, in which they clamp the pieces (2) during machining, and vice versa; said pressers (6) include sections of surfaces (61), shaped so as to complement one another, allowing two pressers (6) act on the pieces (2) to be worked at the same time.
  2. A working centre, according to claim 1, characterised in that it includes three pressers (6), so as to be able to work the opposite faces of two pieces (2) in sequence, keeping them constantly clamped in each operating stage.
  3. A working centre according to claim 2, characterised in that it includes groups of three pressers (6), so as to be able to work the opposite faces of pairs of pieces (2) in sequence, keeping them constantly clamped in each operating stage.
  4. A working centre, according to claim 1, characterised in that it includes a movement device (7) for the pressers (6), able to transmit a roto-translation movement.
  5. A working centre, according to claim 4, characterised in that the movement device (7) for the pressers (6) includes actuators means (8) and motion transmission means (9).
  6. A working centre, according to claim 5, characterised in that the actuators means (8) include a pneumatic system (81) to control the motion transmission means (9).
  7. A working centre, according to claim 5, characterised in that the actuators means (8) include a mechanical system (82) to control the motion transmission means (9).
  8. A working centre, according to claim 5, characterised in that the motion transmission means (9) include a group of sliding pistons (91), each one integral with a corresponding presser (6), able to move said pressers (6) vertically according to the dimensions of the piece (2) to be worked.
  9. A working centre, according to claim 8, characterised in that the motion transmission means (9) include a group of cylinders (92), one for each piston (91), sliding tangentially to said corresponding piston (91) so as to cause the presser (6) integral with the piston (91) to rotate.
  10. A working centre, according to claim 9, characterised in that the cylinders (92) and pistons (91) include sections of surfaces (911, 921), correspondingly shaped to interact with one another and cause the presser (6) to rotate arbitrarily.
  11. A working centre, according to claim 1, characterised in that it includes mobile strike plates (10) to form a stop for the pieces (2) to be worked.
  12. A working centre, according to claim 8, characterised in that the pistons (91) have a polygonal section core (93), so as to maintain separate control over the rotary and translation movements of the pressers (6).
EP08425544.7A 2008-08-06 2008-08-06 Automatic working centre for frame pieces Active EP2153954B1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
EP08425544.7A EP2153954B1 (en) 2008-08-06 2008-08-06 Automatic working centre for frame pieces

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
EP08425544.7A EP2153954B1 (en) 2008-08-06 2008-08-06 Automatic working centre for frame pieces

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EP2153954A1 true EP2153954A1 (en) 2010-02-17
EP2153954B1 EP2153954B1 (en) 2015-01-14

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Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
ITMO20100051A1 (en) * 2010-03-02 2011-09-03 Scm Group Spa APPARATUS FOR PIECES PROCESSING
CN102528864A (en) * 2012-01-16 2012-07-04 佛山市顺德区新马木工机械设备有限公司 Numerical-control multi-shaft seat mortising machine
ITPC20110022A1 (en) * 2011-09-13 2013-03-14 Cml S R L DEVICE FOR LOCKING A PIECE IN A WORKING CENTER
ITRN20150015A1 (en) * 2015-04-22 2016-10-22 Masterwood Spa AUTOMATIC MACHINING CENTER FOR FIXTURE COMPONENTS.
IT201900006620A1 (en) * 2019-05-08 2020-11-08 Scm Group Spa Machining center for wooden pieces equipped with an interchangeable work surface.
CN112676612A (en) * 2020-12-09 2021-04-20 宁国双宁机械有限公司 Numerical control machine tool manipulator for machining impeller shaft of washing machine
IT202000025111A1 (en) * 2020-10-23 2022-04-23 Working Process S R L WORK CENTER, IN PARTICULAR FOR THE PROCESSING OF Elongated WOODEN PIECES, EQUIPPED WITH IMPROVED MANIPULATORS AND RELATED WORK METHOD

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE10108134A1 (en) * 2000-02-22 2001-09-06 Biesse Spa Woodworking machine for panel work uses two jaws with relative movement to the slide and pushed into locking position by actuator.
EP1281491A2 (en) * 2001-08-02 2003-02-05 Michael Weinig Aktiengesellschaft Apparatus and method for machining wooden, plastic or similar workpieces
EP1810802A1 (en) * 2006-01-20 2007-07-25 SCM GROUP S.p.A. Machine tool
EP1832402A1 (en) * 2006-03-10 2007-09-12 IMPRESA 2000 DI SACCHI PARIDE E C. s.a.s. Shaping machine for longitudinally shaping component parts of wood or similar, in particular, component parts of door and window frames

Family Cites Families (3)

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Publication number Priority date Publication date Assignee Title
NL8800814A (en) * 1988-03-30 1989-10-16 Helma Tegelen B V METHOD FOR WORKING WOODEN ARTICLES, APPARATUS FOR CARRYING OUT SUCH METHOD AND SPAN TABLE TO BE USED IN SUCH APPARATUS
ITBO20060644A1 (en) * 2006-09-19 2008-03-20 Grandi Progetti S R L MACHINE FOR PROCESSING WOOD OR SIMILAR COMPONENTS
ITBO20060641A1 (en) * 2006-09-19 2008-03-20 Grandi Progetti S R L MACHINE FOR PROCESSING WOOD OR SIMILAR COMPONENTS

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE10108134A1 (en) * 2000-02-22 2001-09-06 Biesse Spa Woodworking machine for panel work uses two jaws with relative movement to the slide and pushed into locking position by actuator.
EP1281491A2 (en) * 2001-08-02 2003-02-05 Michael Weinig Aktiengesellschaft Apparatus and method for machining wooden, plastic or similar workpieces
EP1810802A1 (en) * 2006-01-20 2007-07-25 SCM GROUP S.p.A. Machine tool
EP1832402A1 (en) * 2006-03-10 2007-09-12 IMPRESA 2000 DI SACCHI PARIDE E C. s.a.s. Shaping machine for longitudinally shaping component parts of wood or similar, in particular, component parts of door and window frames

Cited By (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
ITMO20100051A1 (en) * 2010-03-02 2011-09-03 Scm Group Spa APPARATUS FOR PIECES PROCESSING
EP2363260A1 (en) * 2010-03-02 2011-09-07 SCM Group S.p.A. Apparatus for machining workpieces
ITPC20110022A1 (en) * 2011-09-13 2013-03-14 Cml S R L DEVICE FOR LOCKING A PIECE IN A WORKING CENTER
CN102528864A (en) * 2012-01-16 2012-07-04 佛山市顺德区新马木工机械设备有限公司 Numerical-control multi-shaft seat mortising machine
ITRN20150015A1 (en) * 2015-04-22 2016-10-22 Masterwood Spa AUTOMATIC MACHINING CENTER FOR FIXTURE COMPONENTS.
IT201900006620A1 (en) * 2019-05-08 2020-11-08 Scm Group Spa Machining center for wooden pieces equipped with an interchangeable work surface.
EP3736094A1 (en) * 2019-05-08 2020-11-11 SCM Group S.p.A. Working center for wooden workpieces provided with an interchangeable working plane
IT202000025111A1 (en) * 2020-10-23 2022-04-23 Working Process S R L WORK CENTER, IN PARTICULAR FOR THE PROCESSING OF Elongated WOODEN PIECES, EQUIPPED WITH IMPROVED MANIPULATORS AND RELATED WORK METHOD
CN112676612A (en) * 2020-12-09 2021-04-20 宁国双宁机械有限公司 Numerical control machine tool manipulator for machining impeller shaft of washing machine
CN112676612B (en) * 2020-12-09 2024-04-19 宁国双宁机械有限公司 Numerical control machine tool manipulator for machining impeller shaft of washing machine

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